The research was done at the field of the Pondok Modern Darussalam Gontor in Jabung Village, Mlarak District, Ponorogo Regency, East Java from July 2021 to March 2022. The study used a split plot design with a cultivation system as the main factors: saturated water cultivation (SWC) and dry land cultivation (DC). The second factor as subplot was 14 genotypes of Colacasia, i.e. five dasheen type, nine eddoe types and three genotypes of Xanthosoma. SWC was manipulated by flooding of dry land for one month before planting using irrigation water until two months after planting. DC received irrigation from rainwater. SWC and DC field was separated by 3 m. Each treatment combination was repeated three times. Interaction between water stress and taro genotype had a significant effect on root, tuber, shoot and total fresh weight; root, tuber, shoot and total dry weight, also number, length and density of stomata. Interaction between water stress and taro genotype had a significant effect on root, tuber, shoot and total fresh weight, also root, tuber, shoot and total dry weight. Jepang hijau genotype with dry land cultivation produced the highest tuber fresh weight with 1,860 g, or 80.1% higher than Pratama genotype with the lowest tuber fresh (370 g). Satoimo and Bentul ungu genotypes with saturated water cultivation resulted in the heaviest tuber fresh weight (1,167.67 g and 1,240 g), or 67.7% and 93.1% more than Ozikawa and Bentul genotypes, respectively, with the lowest tuber fresh weight was 376.67 g and 280 g, respectively.

1.
M.
Andrej
,
J.
Kristl
,
A.
Ivancic
,
A.
Sober
,
V.
Sustar
,
T.
Krizan
, and
V.
Lebot
.
Food Chem
170
,
37
46
(
2015
).
2.
D.
Maretta
,
Sobir
,
I. Helianti
,
Purwono
, and
E.
Santosa
,
Biodiversitas
21
,
3525
3533
(
2020
).
3.
M.N.
Lewu
,
A.R.
Mulidzi
,
A.S.
Gerrano
, and
P. O.
Adebola
,
Int. J. Agric. Biol
19
,
589
594
(
2017
).
4.
S.K.
Kalita
,
Int. J. Pure Appl. Biosci
6
,
853
856
(
2018
).
5.
A.
Gebre
and
B.M.
Kassahun
,
Int. J. Adv. Biol. Biomed. Res
3
,
405
412
(
2015
).
6.
A.
Manyatsi
,
N.
Mhazo
, and
M.
Masarimbi
,
Asian J. Agric. Sci
3
,
11
18
(
2011
).
7.
J.F.
Ganança
et al,
Not. Bot. Horti Agrobot. Cluj-Napoca
46
,
65
74
(
2017
).
8.
T.
Abiko
,
S.C.
Miyasaka
.
J Plant Res.
133
,
49
56
(
2019
).
9.
D.N.
Tarla
,
B.M.R.
Ikomo
,
E.N.
Takumbo
,
G.
Voufo
,
D.A.
Fontem
.
Rev. Sci. Tech For Environ du Bassin du Congo
,
6,
10
19
(
2016
).
10.
D. Maretta
,
Sobir
,
I. Helianti
,
Purwono
, and
E.
Santosa
, “
Current status of taro (Colocasia esculenta) utilization as local food diversification toward climate resilience in Indonesia
,” in
IOP Conf Ser Earth Environ Sci 2021,
edited by
A.L.
Sunarwidhi
,
N.H.
Nufus
, and
M.D.
Ariyana
(IOP Publishing,
2021
), p
1
10
.
11.
I.P.
Pais
,
F.H.
Reboredo
,
J.C.
Ramalho
,
M.F.
Pessoa
,
F.C.
Lidon
, and
M.M.
Silva
.
Emirates J. Food Agric
32
,
397
407
(
2020
).
12.
C.
Salazar
,
C.
Hernández
, and
M.T.
Pino
.
Chileaan J. Agric. Res
75
,
71
79
(
2015
).
13.
W.F.
Abobatta
.
Adv. Agric. Environ. Sci
2
,
62
65
(
2019
).
14.
J.
Bailey-serres
and
T.D.
Colmer
.
Plant, Cell Environ
1
,
1
5
(
2014
).
15.
C.S.S.
Gouveia
,
J. F. T.
Ganança
,
H. G. M.
de Nóbrega
,
J. G. R.
de Freitas
,
V.
Lebot
, and
M. Â. A. Pinheiro
de Carvalho
.
Emirates J. Food Agric
32,
150
159
(
2020
).
16.
C.S.R.
Hidayatullah
,
E.
Santosa
, and
D.
Sopandie
.
Biodiversitas
21
,
4550
4557
(
2020
).
17.
C.S.R.
Hidayatullah
,
E.
Santosa
, and
D.
Sopandie
.
J. Agron Indoneia
48
(
3
),
249
257
(
2020
).
18.
Susilawati
,
R. A.
Suwignyo
,
Munandar
, and
M.
Hasmeda
,
J. Agron. Indonesia
40
,
196
203
(
2012
).
19.
U.J.
Phukan
,
S.
Mishra
, and
R.K.
Shukla
,
Crit. Rev. Biotechnol
36
,
956
966
(
2016
).
20.
V.
Fatimah
and
T.B.
Saputro
,
J. Sains dan Seni ITS
5
,
71
77
(
2016
).
21.
U.T.
Syah
,
W.B.
Suwarno
, and
M.
Azrai
,
J. Agron Indonesia
47
,
134
140
(
2019
).
22.
T.
Hayashi
,
T.
Yoshida
,
K.
Fujii
,
S.
Mitsuya
,
T.
Tsuji
,
Y.
Okada
,
E.
Hayashia
, and
A.F.
Yamauchi
.
Crop. Res
152
,
27
35
(
2013
).
23.
M.
Herzog
,
G.G.
Striker
,
T.D.
Colmer
, and
O.
Pedersen
,
Plant, Cell Environ
39
,
1068
1086
(
2016
).
24.
W.
Zhou
,
F.
Chen
,
Y.
Meng
,
U.
Chandrasekaran
, and
X.
Luo
,
Plant Physiol. Biochem
1
(
48
),
228
236
(
2020
).
25.
M.
Amri
,
M.H.
El Ouni
, and
M.B.
Salem
, Bulg.
J. Agric. Sci
20
,
647
657
(
2014
).
26.
F.
Aldana
,
P.N.
García
, and
G.
Fischer
,
Rev. la Acad. Colomb. Ciencias Exactas, Físicas y Nat
38
,
393
400
(
2014
).
27.
M.
Farooq
,
M.
Hussain
,
A.
Wahid
, and
K.H.M.
Siddique
, “Drought Stress in Plants: An Overview,” in
Plant Responses to Drought Stress
, (
R.
Aroca
,Ed.
Berlin, Germany
:
Springer-Verlag Berlin Heidelberg
,
2012
), pp.
1
33
.
28.
H.
Jingjing
and
L.
Yun-Kuan
,
eLS
1
,
1
8
(
2018
).
29.
M.B.
Khirkam
, “Stomatal Anatomy and Stomatal Resistance,” in
Principles of Soil and Plant Water Relations
, 2nd ed (
Manhattan, Kansas
:
Elsevier Inc
.,
2014
), pp.
431
451
.
This content is only available via PDF.
You do not currently have access to this content.