Sulian Lv
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Explore the profile of Sulian Lv including associated specialties, affiliations and a list of published articles.
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Articles
28
Citations
441
Followers
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Recent Articles
1.
Zhang B, Jia W, Lin K, Lv S, Guo Z, Xie W, et al.
Planta
. 2025 Feb;
261(3):62.
PMID: 39979492
This study identified a SbABCB11 gene in sorghum that could enhance Cd translocation from roots to shoots, thus increasing Cd accumulation in shoots. Cadmium (Cd) is a widespread soil contaminant...
2.
Lin K, Yi Z, Lv S, Zhang B, Guo Z, Li Y
Planta
. 2024 Dec;
261(1):12.
PMID: 39661199
1988 lncRNAs were identified in sweet sorghum roots under cadmium treatment; lncRNA 15962 and lncRNA 11558 were validated to be the key lncRNAs involved in regulating cadmium accumulation and translocation....
3.
Lou T, Lv S, Wang J, Wang D, Lin K, Zhang X, et al.
Plant Cell Environ
. 2024 Apr;
47(7):2640-2659.
PMID: 38558078
Cell wall is involved in plant growth and plays pivotal roles in plant adaptation to environmental stresses. Cell wall remodelling may be crucial to salt adaptation in the euhalophyte Salicornia...
4.
Jia W, Guo Z, Lv S, Lin K, Li Y
Planta
. 2024 Mar;
259(5):100.
PMID: 38536457
SbYS1 and its upstream transcription factor SbWRKY72 were involved in Cd tolerance and accumulation and are valuable for developing sweet sorghum germplasm with high-Cd tolerance or accumulation ability through genetic...
5.
Wang D, Lv S, Guo Z, Lin K, Zhang X, Jiang P, et al.
Plant Cell Physiol
. 2023 Sep;
65(1):20-34.
PMID: 37758243
Salinity and phosphate (Pi) starvation are the most common abiotic stresses that threaten crop productivity. Salt cress (Eutrema salsugineum) displays good tolerance to both salinity and Pi limitation. Previously, we...
6.
Jia W, Lin K, Lou T, Feng J, Lv S, Jiang P, et al.
Planta
. 2021 Jun;
254(1):16.
PMID: 34185181
Key miRNAs including sbi-miR169p/q, sbi-miR171g/j, sbi-miR172a/c/d, sbi-miR172e, sbi-miR319a/b, sbi-miR396a/b, miR408, sbi-miR5384, sbi-miR5565e and nov_23 were identified to function in the regulation of Cd accumulation and tolerance. As an energy plant,...
7.
Lv S, Wang D, Jiang P, Jia W, Li Y
Plant Cell Environ
. 2021 Feb;
44(5):1549-1564.
PMID: 33560528
Salt cress (Eutrema salsugineum) presents relatively high phosphate (Pi) use efficiency cy in its natural habitat. Phosphate Transporters (PHTs) play critical roles in Pi acquisition and homeostasis. Here, a comparative...
8.
Lv S, Tai F, Guo J, Jiang P, Lin K, Wang D, et al.
Plant Cell Physiol
. 2020 Nov;
62(1):66-79.
PMID: 33141223
Salinity-induced lipid alterations have been reported in many plant species; however, how lipid biosynthesis and metabolism are regulated and how lipids work in plant salt tolerance are much less studied....
9.
Lv S, Miao H, Luo M, Li Y, Wang Q, Lee Y, et al.
Mol Plant
. 2017 Sep;
10(11):1473-1476.
PMID: 28939449
No abstract available.
10.
Lv S, Jiang P, Tai F, Wang D, Feng J, Fan P, et al.
Planta
. 2017 Aug;
246(6):1177-1187.
PMID: 28825133
The V-ATPase subunit A participates in vacuolar Na compartmentalization in Salicornia europaea regulating V-ATPase and V-PPase activities. Na sequestration into the vacuole is an efficient strategy in response to salinity...